刘家橙,刘家橘,王晓燕,刘冲.微地震技术评价中牟区块体积压裂的效果[J].地质找矿论丛,2019,34(1):78-83
微地震技术评价中牟区块体积压裂的效果
Micro-seismic technique evaluation of the effect of volumetric fracturing in Zhongmou area
投稿时间:2017-10-26  修订日期:2018-05-25
DOI:10.6053/j.issn.1001-1412.2019.01.012
中文关键词:  中牟区块  牟页1井  体积压裂  微地震监测技术  河南省
英文关键词:Zhongmou block  Mouye No. 1 well  volume fracturing  microseismic monitoring technology  Henan province
基金项目:国土资源部第二轮页岩气探矿权项目"河南中牟页岩气勘查(编号:GT2012YQTKQCR0020)"、河南省重大科技专项项目"河南页岩气勘查开发及示范应用研究(编号:151100311000)"、河南省国土资源厅科技攻关项目"河南省平原区晚古生代页岩气层岩相古地理研究"(编号:2015-1992-20)联合资助。
作者单位
刘家橙 河南省地质调查院, 郑州 450001
地下清洁能源勘查开发产业技术创新战略联盟, 郑州 450001 
刘家橘 河南省地质调查院, 郑州 450001
地下清洁能源勘查开发产业技术创新战略联盟, 郑州 450001 
王晓燕 河南省地质矿产勘查开发局第二地质矿产调查院, 郑州 450001 
刘冲 河南省地质调查院, 郑州 450001
地下清洁能源勘查开发产业技术创新战略联盟, 郑州 450001 
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中文摘要:
      微地震监测技术是页岩气开采过程中对页岩气储层压裂效果评价和指导压裂过程的重要手段,可通过观察、分析压裂过程中诱发微地震事件,获取压裂裂缝参数、导流能力、裂缝展布发育方向等信息。中牟区块牟页1井具有低孔、低渗储层特征,对含气层段的三层储层,采用大排量水力压裂施工,进行地面微地震监测、井中微破裂成像技术压裂监测及微地震监测;牟页1井监测压裂结果显示为缝长251~496 m,缝宽120~252 m,改造体积约为237.5×104~387.7×104 m3,方位角64°~80°。压裂实施使储层裂缝开启含气层段得到改造,指导了实时压裂和压裂效果评价。
英文摘要:
      Microseismic monitoring technology is an important means to evaluate the fracturing effect of shale gas reservoirs and to guide the fracturing process. By observing and analyzing the microseismic events induced in the fracturing process, the fracturing parameters, conductivity, the development azimuth of the fractures and other information are obtained. The Mouye No. 1 well in the reservoir area of Zhongmou block has the following characteristics:low porosity and low permeability. The three layer reservoir of gas zone is conducted large volume hydraulic fracturing operation and the fracturing was monitored with micro-seismic technique at the ground surface and the micro-fracture imaging technique and micro-seismic technique in the well. The result is that the fracture is 251~496 m long and 120~252 m wide, the reworked volume is about 237.5~387.7 million m3, azimuth is 64°~80°. Implement of the hydraulic fracturing opens fractures in reservoir and reworks the gas zone so as to guide the real-time fracturing and evaluate fracturing effects.
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